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硫酸角质素,一种电感觉神经反应性细胞指令性糖胺聚糖。

Keratan sulfate, an electrosensory neurosentient bioresponsive cell instructive glycosaminoglycan.

机构信息

Graduate School of Biomedical Engineering, University of New South Wales, Sydney, NSW 2052, Australia.

Raymond Purves Laboratory, Institute of Bone and Joint Research, Kolling Institute of Medical Research, Northern Sydney Local Health District, Royal North Shore Hospital, St. Leonards, NSW 2065, Australia.

出版信息

Glycobiology. 2024 Apr 1;34(3). doi: 10.1093/glycob/cwae014.

Abstract

The roles of keratan sulfate (KS) as a proton detection glycosaminoglycan in neurosensory processes in the central and peripheral nervous systems is reviewed. The functional properties of the KS-proteoglycans aggrecan, phosphacan, podocalyxcin as components of perineuronal nets in neurosensory processes in neuronal plasticity, cognitive learning and memory are also discussed. KS-glycoconjugate neurosensory gels used in electrolocation in elasmobranch fish species and KS substituted mucin like conjugates in some tissue contexts in mammals need to be considered in sensory signalling. Parallels are drawn between KS's roles in elasmobranch fish neurosensory processes and its roles in mammalian electro mechanical transduction of acoustic liquid displacement signals in the cochlea by the tectorial membrane and stereocilia of sensory inner and outer hair cells into neural signals for sound interpretation. The sophisticated structural and functional proteins which maintain the unique high precision physical properties of stereocilia in the detection, transmittance and interpretation of acoustic signals in the hearing process are important. The maintenance of the material properties of stereocilia are essential in sound transmission processes. Specific, emerging roles for low sulfation KS in sensory bioregulation are contrasted with the properties of high charge density KS isoforms. Some speculations are made on how the molecular and electrical properties of KS may be of potential application in futuristic nanoelectronic, memristor technology in advanced ultrafast computing devices with low energy requirements in nanomachines, nanobots or molecular switches which could be potentially useful in artificial synapse development. Application of KS in such innovative areas in bioregulation are eagerly awaited.

摘要

本文综述了硫酸角质素(KS)作为中枢和周围神经系统神经感觉过程中质子检测糖胺聚糖的作用。还讨论了 KS 蛋白聚糖聚集蛋白、磷酸聚糖、足细胞素作为神经元可塑性、认知学习和记忆中神经感觉过程中神经周围网成分的功能特性。需要考虑在感觉信号转导中使用在软骨鱼类电定位中使用的 KS-糖缀合物神经感觉凝胶和在哺乳动物某些组织环境中使用的 KS 取代粘蛋白样缀合物。KS 在软骨鱼类神经感觉过程中的作用与其在哺乳动物耳蜗中由听膜和感觉内毛细胞和外毛细胞的纤毛的机械电转换中对声液位移信号的电机械转导中的作用之间存在平行关系。维持纤毛独特的高精度物理特性的复杂结构和功能蛋白在听觉过程中对声信号的检测、传递和解释中非常重要。维持纤毛的材料特性对于声音传输过程至关重要。低硫酸化 KS 在感觉生物调节中的特定新兴作用与高电荷密度 KS 亚型的特性形成对比。对 KS 的分子和电学特性如何可能在未来的纳米电子学、具有低能量需求的先进超快计算设备中的忆阻器技术中具有潜在应用进行了一些推测纳米机器、纳米机器人或分子开关,它们在人工突触的发展中可能具有潜在的用途。人们急切地期待着 KS 在生物调节等创新领域的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/349f/10987296/6d2f9e8d68b5/cwae014ga1.jpg

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